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Effect of salinity and drought stress on germination and early seedlings growth of bread wheat (Triticum aestivum L.)

机译:盐分和干旱胁迫对面包小麦发芽和幼苗早期生长的影响

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Salinity is one of the most important environmental stresses that limits soil fertility and has adverse effects on plant growth. In order to increase wheat production under saline conditions, it is necessary to better understand genotypic difference, the physiological and biochemical processes of salt tolerance in wheat. The aim of this study was to determine the most tolerant winter wheat varieties against salinity and osmotic stress at germination stage and early seedlings growth. The salinity and osmotic stress were simulated in controlled environmental conditions by adding different concentrations of NaCl and mannitol solution to the growing media of five winter wheat variety. In all studied varieties the benchmark water potential in which they had germinated and had a good seedlings growth was of -0.3MPa. Under the stronger stress, -0.6 MPa, all varieties showed reduction in the all examined parameters. The variety Bosanka, had the highest final germination and germination energy under both mannitol and salt stress treatments. The parameters defining the development or percentage of strong seeds, coleoptile and root length, fresh and dry weight of root and coleoptile of a seed were more affected by water deficit stress and salt stress than germination and germination energy. Biplot analysis showed that wheat cultivars grown under -0.6MPa osmotic had higher values of root/coleoptile ratio in relation to control and -0.3MPa treatment which is the most reliable for screening properties of the genotypes for drought resistance in seedling stage.
机译:盐分是限制土壤肥力并对植物生长产生不利影响的最重要的环境胁迫之一。为了增加盐分条件下的小麦产量,有必要更好地了解基因型差异,小麦耐盐性的生理生化过程。这项研究的目的是确定在萌芽期和幼苗早期生长期间对盐度和渗透胁迫最耐受的冬小麦品种。通过在五个冬小麦品种的生长培养基中添加不同浓度的氯化钠和甘露醇溶液,在受控环境条件下模拟了盐度和渗透胁迫。在所有研究的品种中,它们发芽并且幼苗生长良好的基准水势为-0.3MPa。在-0.6 MPa的较强压力下,所有品种的所有检测参数均降低。在甘露醇和盐胁迫下,Bosanka品种的最终发芽和发芽能最高。定义强种子的发育或百分比,胚芽鞘和根长,种子的根的新鲜和干重以及胚芽鞘的参数受水分亏缺胁迫和盐胁迫的影响更大,而不是发芽和发芽能量。 Biplot分析表明,相对于对照和-0.3MPa处理,在-0.6MPa渗透压下生长的小麦品种具有更高的根/胚芽鞘比率值,这对于筛选基因型的抗旱性最可靠。

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